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121por Contreras, Rodrigo A., Pizarro, Marisol, Köhler, Hans, Sáez, Claudio A., Zúñiga, Gustavo E.“…BACKGROUND: In field, C. quitensis is subjected to many abiotic extreme environmental conditions, such as low temperatures, high UV-B, salinity and reduced water potentials, but not metal or metalloid high concentrations in soil, however, other members of Caryophyllaceae family have tolerance to high concentrations of metals, this is the case of Silene genre. …”
Publicado 2018
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122por Hood, Michael E., Antonovics, Janis, Wolf, Monroe, Stern, Zachariah L., Giraud, Tatiana, Abbate, Jessica L.“…This study investigated anther‐smut disease, caused by fungi in the genus Microbotryum, among natural populations of plants in the Caryophyllaceae. A broad geographic survey focused on sites of the disease on multiple host species in sympatry. …”
Publicado 2019
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123por Lucini, Fabíola, de Andrade, Guilherme Afonso Kessler, Victoria, Filipe de Carvalho, de Albuquerque, Margéli Pereira“…(Poaceae) and Colobanthus quitensis (Kunth) Bartl. (Caryophyllaceae). In this study, we characterized fungi isolated from the fresh leaves of this grass species. …”
Publicado 2022
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124por Zhou, Aimin, Ma, Hongping, Liu, Enhui, Jiang, Tongtong, Feng, Shuang, Gong, Shufang, Wang, Jingang“…Dianthus spiculifolius, a perennial herbaceous flower and a member of the Caryophyllaceae family, has strong resistance to cold and drought stresses. …”
Publicado 2017
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125“…To investigate the diversity of Peronospora species parasitic to Stellaria and Pseudostellaria (Caryophyllaceae) plants in Korea, we performed a morphological analysis on dried herbarium specimens and molecular phylogenetic inferences based on internal transcribed spacer rDNA and cox2 mitochondrial DNA sequences. …”
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126por Kawamoto, Hiroki, Yamanaka, Kaori, Koizumi, Ayako, Ishii, Kotaro, Kazama, Yusuke, Abe, Tomoko, Kawano, Shigeyuki“…Silene latifolia is a dioecious flowering plant with sex chromosomes in the family Caryophyllaceae. Development of a gynoecium and stamens are suppressed in the male and female flowers of S. latifolia, respectively. …”
Publicado 2019
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127“…The most diverse families are Compositae (20.5%), Cruciferae (10.2%), Leguminosae (8.3%) and Boraginaceae (6.8%), followed by Caryophyllaceae and Gramineae (5.4%). These six families represent 60% of the total families recognized in the study area, while nine families each are represented by only one species. …”
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128“…The Myrtales to Ericales pollen record documented here comprises 46 different taxa belonging to Onagraceae (Ludwigia), Ericaceae (Craigia, Reevesia, Tilia), Anacardiaceae (Pistacia), Rutaceae (Zanthoxylum), Sapindaceae (Acer), Santalaceae (Arceuthobium), Amaranthaceae, Caryophyllaceae, Polygonaceae (Persicaria, Rumex), Cornaceae (Alangium, Cornus, Nyssa), Ebenaceae (Diospyros), Ericaceae (Andromeda, Arbutus, Empetrum, Erica), Sapotaceae (Pouteria, Sideroxylon), Styracaceae (Rehderodendron) and Symplocaceae (Symplocos). …”
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129por Lu, Yi-Fei, Xu, Yue-Liang, Xie, Wen-Yuan, Zhang, Hong-Wei, Zheng, Zi-Hong, Cai, Xin, Jin, Xiao-Feng“…Cerastiumhuadingense Y.F.Lu, W.Y.Xie & X.F.Jin (Caryophyllaceae) differs from C.qingliangfengicum in having sterile stems absent, leaves sessile, petals slightly longer than sepals, and stamens slightly shorter than sepals. …”
Publicado 2021
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130por Yockteng, Roxana, Marthey, Sylvain, Chiapello, Hélène, Gendrault, Annie, Hood, Michael E, Rodolphe, François, Devier, Benjamin, Wincker, Patrick, Dossat, Carole, Giraud, Tatiana“…BACKGROUND: The basidiomycete fungus Microbotryum violaceum is responsible for the anther-smut disease in many plants of the Caryophyllaceae family and is a model in genetics and evolutionary biology. …”
Publicado 2007
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131“…BACKGROUND: The duplication of autosomal genes onto the Y chromosome may be an important element in the evolution of sexual dimorphism.A previous cytological study reported on a putative example of such a duplication event in a dioecious tribe of Silene (Caryophyllaceae): it was inferred that the Y-linked MADS-box gene AP3Y originated from a duplication of the reportedly autosomal orthologAP3A. …”
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132por Chidrawar, Vijay R., Patel, Krishnakant N., Sheth, Navin R., Shiromwar, Shruti S., Trivedi, Piyush“…The whole plant of Stellaria media (family: Caryophyllaceae) has been tested for its antiobesity activity by using progesterone-induced obesity model in female albino mice. …”
Publicado 2011
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133por Sukhorukov, Alexander P., Mavrodiev, Evgeny V., Struwig, Madeleen, Nilova, Maya V., Dzhalilova, Khalima Kh., Balandin, Sergey A., Erst, Andrey, Krinitsyna, Anastasiya A.“…The syncarpy-to-lysicarpy paradigm in Caryophyllaceae needs to be reinterpreted.…”
Publicado 2015
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134por Jakimiuk, Katarzyna, Strawa, Jakub W., Granica, Sebastian, Locatelli, Marcello, Tartaglia, Angela, Tomczyk, Michał“…A new 5,7-dihydroxy-3′-methoxy-4′-acetoxyflavone-8-C-β-d-arabinopyranoside-2″-O-(4‴-acetoxy)-glucoside (6) and three known flavone C-glycosides—5,7,3′,4′-tetrahydroxyflavone-6-C-xyloside-8-C-β-d-glucoside (lucenin-1) (7), 5,7,3′-trihydroxyflavone-6-C-glucoside-8-C-β-d-glucoside (vicenin-2) (8), and 5,7,4′-trihydroxy-3′-methoxyflavone-6-C-β-d-glucopyranoside-8-C-α-arabinopyranoside (chrysoeriol-6-C-β-d-glucopyranoside-8-C-α-arabinopyranoside) (9)—were isolated from aerial parts of Scleranthus perennis L. (Caryophyllaceae). Their structures were determined through the use of comprehensive spectroscopic and spectrometric methods, and a method for the quantification of the major constituents of S. perennis and S. annuus L. was developed. …”
Publicado 2022
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135“…Studies have reported that Pseudostellaria heterophylla, Linum usita-tissimum (flaxseed), and Drymaria diandra, plants rich in Caryophyllaceae-type cyclopeptides and commonly used as herbal or dietary supplements, are effective in controlling blood sugar. …”
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136“…The families and genera best represented in the collection are Compositae, Leguminosae, Gramineae, Labiatae, Caryophyllaceae, Teucrium, Silene, Asplenium, Linaria and Quercus. …”
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137por Filatov, Dmitry A.“…In this study, I analyse sex-specific recombination rates in a dioecious plant Silene latifolia (Caryophyllaceae), which evolved separate sexes and sex chromosomes ~11 million years ago. …”
Publicado 2023
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138“…Using a gynodioecious population of the dominant plant Silene acaulis (Caryophyllaceae), we tested the reproductive assurance hypothesis and also the stress gradient hypothesis with a series of pollinator exclusion trials and extensive measurements of subsequent reproductive output (gender ratio, plant size, percent fruit-set, fruit weight, seeds per fruit, total seeds, seed weight, and seed germination). …”
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139“…Moreover, by allowing the strength of the inhibition exerted by each primordium to decrease as the primordium ages, we show that pentamerous whorls, in which the angular and radial positions of the primordia are consistent with those observed in sepal and petal primordia in Silene coeli-rosa, Caryophyllaceae, become the dominant arrangement. The organ number within the outmost whorl, corresponding to the sepals, takes a value of four or five in a much wider parameter space than that in which it takes a value of six or seven. …”
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140por San Toh, Su, Chen, Zehua, Rouchka, Eric C., Schultz, David J., Cuomo, Christina A., Perlin, Michael H.“…This fungus is part of a species complex that infects species of the Caryophyllaceae, replacing pollen with the fungal spores. …”
Publicado 2017
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